Nanobiophotonics and Laser Microspectroscopy Center, Interdisciplinary Research Institute in Bio-Nano-Sciences, Babes-Bolyai University, 42 T. Laurian Str., 400271 Cluj-Napoca, Romania.
Faculty of Physics, Babes-Bolyai University, 1 M. Kogalniceanu Str., 400084 Cluj-Napoca, Romania.
Int J Mol Sci. 2022 Oct 17;23(20):12410. doi: 10.3390/ijms232012410.
Herein is presented a novel and efficient portable paper-based sensing platform using paper-incorporated histidine stabilized gold nanoclusters (His-AuNCs), for the sensitive and selective detection of Fe ions from low-volume real water samples based on photoluminescence (PL) quenching. Highly photoluminescent colloidal His-AuNCs are obtained via a novel microwave-assisted method. The His-AuNCs-based sensor reveals a limit of detection (LOD) as low as 0.2 μM and a good selectivity towards Fe ions, in solution. Further, the fabricated portable sensing device based on paper impregnated with His-AuNCs proves to be suitable for the easy detection of hazardous Fe levels from real water samples, under UV light exposure, through evaluating the level of PL quenching on paper. Photographic images are thereafter captured with a smartphone camera and the average blue intensity ratio (I/I) of the His-AuNCs-paper spots is plotted against [Fe] revealing a LOD of 3.2 μM. Moreover, selectivity and competitivity assays performed on paper-based sensor prove that the proposed platform presents high selectivity and accuracy for the detection of Fe ions from water samples. To validate the platform, sensing assays are performed on real water samples from local sources, spiked with 35 μM Fe ions (i.e., Fe). The obtained recoveries prove the high sensitivity and accuracy of the proposed His-AuNCs-paper-based sensor pointing towards its applicability as an easy-to-use, fast, quantitative and qualitative sensor suitable for on-site detection of toxic levels of Fe ions in low-volume real water samples.
本文提出了一种新颖高效的便携式基于纸的传感平台,该平台使用含有组氨酸稳定的金纳米簇(His-AuNCs)的纸,基于光致发光(PL)猝灭,可从低体积实际水样中灵敏且选择性地检测 Fe 离子。通过一种新颖的微波辅助方法获得高发光胶体 His-AuNCs。基于 His-AuNCs 的传感器在溶液中对 Fe 离子表现出低至 0.2 μM 的检测限(LOD)和良好的选择性。此外,基于纸浸渍 His-AuNCs 的制造便携式传感设备被证明适用于在 UV 光照射下通过评估纸的 PL 猝灭水平,从实际水样中轻松检测有害的 Fe 水平。然后用智能手机摄像头拍摄照片,并绘制 His-AuNCs-纸斑点的平均蓝色强度比(I/I)与[Fe]的关系,揭示出 3.2 μM 的 LOD。此外,在基于纸的传感器上进行的选择性和竞争性测定证明,所提出的平台对水样中 Fe 离子的检测具有高选择性和准确性。为了验证该平台,对来自当地来源的实际水样进行了传感测定,其中加入了 35 μM 的 Fe 离子(即 Fe)。获得的回收率证明了所提出的基于 His-AuNCs-纸的传感器具有高灵敏度和准确性,表明其适用于在现场检测低体积实际水样中有毒水平的 Fe 离子。